Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...

The UQRG (15 min cadence) GIMs were downloaded from CDDIS (The Crustal Dynamics Data Information System, https://cddis.nasa.gov/archive/gnss/products/ionex/). The maps were cropped accordingly to the Eastern North-Atlantic Midlatitudinal Zone (Eastern North-Atlantic Midlatitudinal Zone.jpg) boundari...

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Main Authors: Morozova, Anna, Barata, Teresa
Format: Still Image
Language:unknown
Published: figshare 2024
Subjects:
Online Access:https://dx.doi.org/10.6084/m9.figshare.26927458.v1
https://figshare.com/articles/figure/Spatial_TEC_gradients_for_geomagnetic_storms_in_March_April_and_November_of_2023_for_an_Eastern_North-Atlantic_Midlatitudinal_Zone/26927458/1
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author Morozova, Anna
Barata, Teresa
author_facet Morozova, Anna
Barata, Teresa
author_sort Morozova, Anna
collection DataCite
description The UQRG (15 min cadence) GIMs were downloaded from CDDIS (The Crustal Dynamics Data Information System, https://cddis.nasa.gov/archive/gnss/products/ionex/). The maps were cropped accordingly to the Eastern North-Atlantic Midlatitudinal Zone (Eastern North-Atlantic Midlatitudinal Zone.jpg) boundaries.A scheme described in ( Liu, Q., Hernández‐Pajares, M., Yang, H., Monte‐Moreno, E., García‐Rigo, A., Lyu, H., Olivares‐Pulido, G. and Orús‐Pérez, R. (2022) A New Way of Estimating the Spatial and Temporal Components of the Vertical Total Electron Content Gradient Based on UPC‐IonSAT Global Ionosphere Maps. Space Weather, 20(2), p.e2021SW002926 ) was used to calculate TEC gradients for each of gridpoints. The animations show TEC gradients evolution during selected days around the following geomagnetic storms: March 23-24, 2023, (Dst_min = -163 nT); April 23-24, (Dst_min = -212 nT); November 4-5, (Dst_min = -172 nT). ...
format Still Image
genre North Atlantic
genre_facet North Atlantic
geographic Moreno
Olivares
geographic_facet Moreno
Olivares
id ftdatacite:10.6084/m9.figshare.26927458.v1
institution Open Polar
language unknown
long_lat ENVELOPE(-62.300,-62.300,-64.083,-64.083)
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op_doi https://doi.org/10.6084/m9.figshare.26927458.v110.6084/m9.figshare.26927458
op_relation https://dx.doi.org/10.6084/m9.figshare.26927458
op_rights Creative Commons Attribution 4.0 International
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spelling ftdatacite:10.6084/m9.figshare.26927458.v1 2025-01-16T23:32:08+00:00 Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ... Morozova, Anna Barata, Teresa 2024 https://dx.doi.org/10.6084/m9.figshare.26927458.v1 https://figshare.com/articles/figure/Spatial_TEC_gradients_for_geomagnetic_storms_in_March_April_and_November_of_2023_for_an_Eastern_North-Atlantic_Midlatitudinal_Zone/26927458/1 unknown figshare https://dx.doi.org/10.6084/m9.figshare.26927458 Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 Mesospheric, thermospheric, ionospheric and magnetospheric physics ImageObject graphic Image Figure 2024 ftdatacite https://doi.org/10.6084/m9.figshare.26927458.v110.6084/m9.figshare.26927458 2024-10-01T10:10:21Z The UQRG (15 min cadence) GIMs were downloaded from CDDIS (The Crustal Dynamics Data Information System, https://cddis.nasa.gov/archive/gnss/products/ionex/). The maps were cropped accordingly to the Eastern North-Atlantic Midlatitudinal Zone (Eastern North-Atlantic Midlatitudinal Zone.jpg) boundaries.A scheme described in ( Liu, Q., Hernández‐Pajares, M., Yang, H., Monte‐Moreno, E., García‐Rigo, A., Lyu, H., Olivares‐Pulido, G. and Orús‐Pérez, R. (2022) A New Way of Estimating the Spatial and Temporal Components of the Vertical Total Electron Content Gradient Based on UPC‐IonSAT Global Ionosphere Maps. Space Weather, 20(2), p.e2021SW002926 ) was used to calculate TEC gradients for each of gridpoints. The animations show TEC gradients evolution during selected days around the following geomagnetic storms: March 23-24, 2023, (Dst_min = -163 nT); April 23-24, (Dst_min = -212 nT); November 4-5, (Dst_min = -172 nT). ... Still Image North Atlantic DataCite Moreno ENVELOPE(-62.300,-62.300,-64.083,-64.083) Olivares ENVELOPE(-56.983,-56.983,-63.400,-63.400)
spellingShingle Mesospheric, thermospheric, ionospheric and magnetospheric physics
Morozova, Anna
Barata, Teresa
Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...
title Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...
title_full Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...
title_fullStr Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...
title_full_unstemmed Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...
title_short Spatial TEC gradients for geomagnetic storms in March, April and November of 2023 for an Eastern North-Atlantic Midlatitudinal Zone ...
title_sort spatial tec gradients for geomagnetic storms in march, april and november of 2023 for an eastern north-atlantic midlatitudinal zone ...
topic Mesospheric, thermospheric, ionospheric and magnetospheric physics
topic_facet Mesospheric, thermospheric, ionospheric and magnetospheric physics
url https://dx.doi.org/10.6084/m9.figshare.26927458.v1
https://figshare.com/articles/figure/Spatial_TEC_gradients_for_geomagnetic_storms_in_March_April_and_November_of_2023_for_an_Eastern_North-Atlantic_Midlatitudinal_Zone/26927458/1